Fibulin-4 regulates expression of the tropoelastin gene and consequent elastic-fibre formation by human fibroblasts

Author:

Chen Qiuyun1,Zhang Teng1,Roshetsky Joseph F.1,Ouyang Zhufeng1,Essers Jeroen234,Fan Chun1,Wang Qing1,Hinek Aleksander5,Plow Edward F.1,Dıcorleto Paul E.6

Affiliation:

1. Department of Molecular Cardiology, Lerner Research Institute, Cleveland Clinic, Cleveland, OH 44195, U.S.A.

2. Department of Cell Biology and Genetics, Erasmus MC, Dr. Molewaterplein 50, 3015GE, Rotterdam, The Netherlands

3. Department of Radiation Oncology, Erasmus MC, Dr. Molewaterplein 50, 3015GE, Rotterdam, The Netherlands

4. Department of Vascular Surgery, Erasmus MC, Dr. Molewaterplein 50, 3015GE, Rotterdam, The Netherlands

5. Cardiovascular Research, Heart Centre, Hospital for Sick Children and Department of Laboratory Medicine and Pathology, University of Toronto, Toronto, ON, Canada, M5G 1X8

6. Department of Cell Biology, Lerner Research Institute, Cleveland Clinic Cleveland, OH 44195, U.S.A.

Abstract

Elastic fibres are essential for normal physiology in numerous tissues, including arteries, lungs and skin. Fibulin-4 is an elastic-fibre-associated glycoprotein that is indispensable for elastic-fibre formation in mice. However, the mechanism by which fibulin-4 executes this function remains to be determined. Here, we established an in vitro functional assay system in which fibulin-4 was knocked down in human foreskin fibroblasts using siRNA (small interfering RNA) technology. With two different siRNAs, substantial knockdown of fibulin-4 was achieved, and this suppression was associated with impaired elastic-fibre formation by the fibroblasts. Real-time reverse transcription–PCR analysis showed that knockdown of fibulin-4 expression was accompanied by reduced expression of tropoelastin mRNA. Further analysis showed that this decrease was caused by transcriptional down-regulation of tropoelastin. This effect was selective, since the mRNA level of other elastic-fibre-associated proteins, including fibrillin-1, lysyl oxidase and lysyl oxidase-like-1, was not affected. Moreover, addition of conditioned medium from cultures of CHO (Chinese-hamster ovary) cells overexpressing fibulin-4 stimulated tropoelastin expression and elastic-fibre formation in cultures of Williams–Beuren-syndrome fibroblasts. Knocking down or knocking out fibulin-4 in mice led to a decrease in tropoelastin expression in the aorta. These results indicate that fibulin-4, considered as a structural protein, may also participate in regulating elastic-fibre formation in human cells through an unanticipated mechanism, namely the regulation of tropoelastin expression.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry

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